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工蜂的表皮碳氢化合物图谱是通过一种社会调节的先天过程发展而来的。

The cuticular hydrocarbon profiles of honey bee workers develop via a socially-modulated innate process.

机构信息

Department of Biology, Washington University in Saint Louis, Saint Louis, United States.

Department of Biology, University of Toronto Mississauga, Mississauga, Canada.

出版信息

Elife. 2019 Feb 5;8:e41855. doi: 10.7554/eLife.41855.

Abstract

Large social insect colonies exhibit a remarkable ability for recognizing group members via colony-specific cuticular pheromonal signatures. Previous work suggested that in some ant species, colony-specific pheromonal profiles are generated through a mechanism involving the transfer and homogenization of cuticular hydrocarbons (CHCs) across members of the colony. However, how colony-specific chemical profiles are generated in other social insect clades remains mostly unknown. Here we show that in the honey bee (), the colony-specific CHC profile completes its maturation in foragers via a sequence of stereotypic age-dependent quantitative and qualitative chemical transitions, which are driven by environmentally-sensitive intrinsic biosynthetic pathways. Therefore, the CHC profiles of individual honey bees are not likely produced through homogenization and transfer mechanisms, but instead mature in association with age-dependent division of labor. Furthermore, non-nestmate rejection behaviors seem to be contextually restricted to behavioral interactions between entering foragers and guards at the hive entrance.

摘要

大型社会性昆虫群体通过特定于群体的表皮信息素来识别群体成员,表现出显著的能力。以前的工作表明,在一些蚂蚁物种中,特定于群体的信息素特征是通过一种涉及在群体成员之间转移和均匀化表皮碳氢化合物 (CHC) 的机制产生的。然而,其他社会性昆虫类群中的特定于群体的化学特征是如何产生的,在很大程度上仍然未知。在这里,我们表明在蜜蜂()中,通过一系列刻板的、与年龄相关的定量和定性化学转变,以及受环境敏感的内在生物合成途径驱动,使特定于群体的 CHC 特征在采集蜂中完成成熟。因此,个体蜜蜂的 CHC 特征不太可能通过均匀化和转移机制产生,而是与年龄相关的劳动分工相关而成熟。此外,非巢内排斥行为似乎仅限于进入采集蜂和蜂巢入口处守卫之间的行为相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3863/6382352/27ad05415b0d/elife-41855-fig1.jpg

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